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温度会改变乙醇诱导的C57小鼠脑膜的流化状态。

Temperature alters ethanol-induced fluidization of C57 mouse brain membranes.

作者信息

Bejanian M, Alkana R L, von Hungen K, Baxter C F, Syapin P J

机构信息

Alcohol and Brain Research Laboratory, School of Pharmacy, University of Southern California, Los Angeles 90033.

出版信息

Alcohol. 1991 Mar-Apr;8(2):117-21. doi: 10.1016/0741-8329(91)91319-w.

Abstract

The interaction between temperature and ethanol-induced fluidization was investigated in brain synaptic plasma membranes from C57BL/6 mice. Changes in fluidity were measured using the fluorescent probe 1,6-diphenyl-1,3,5-hexatriene. Fluorescence polarization was tested in the presence and absence of ethanol at 25, 32 and 37 degrees C. An increase in temperature resulted in a significant increase in the baseline fluidity of the membranes and an increase in the magnitude of ethanol-induced fluidization of brain membranes. The combined effect of temperature on baseline fluidity and the magnitude of the response to ethanol resulted in a significant temperature-related increase in the relative response to ethanol (% change in polarization). The minimum concentration of ethanol required to cause a significant increase in the fluidity of the membranes was 170.7 mM at 25 degrees C and 85.3 mM at both 32 and 37 degrees C. The present results indicate that temperature-related changes in the effects of ethanol on membrane properties may underlie the effects of temperature on ethanol sensitivity in C57 mice.

摘要

在C57BL/6小鼠的脑突触质膜中研究了温度与乙醇诱导的膜流动性之间的相互作用。使用荧光探针1,6-二苯基-1,3,5-己三烯测量膜流动性的变化。在25、32和37摄氏度下,分别在有无乙醇的情况下测试荧光偏振。温度升高导致膜的基线流动性显著增加,且乙醇诱导的脑膜流动性增加幅度增大。温度对基线流动性和对乙醇反应幅度的综合作用导致与温度相关的乙醇相对反应(偏振变化百分比)显著增加。在25摄氏度下,使膜流动性显著增加所需的乙醇最低浓度为170.7 mM,在32和37摄氏度下均为85.3 mM。目前的结果表明,乙醇对膜特性影响的温度相关变化可能是温度对C57小鼠乙醇敏感性影响的基础。

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